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A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum

The ethylene response factor (ERF) plays a crucial role in plant innate immunity. However, the molecular function of ERF in response to Exserohilum turcicum (E. turcicum) remains unknown in maize. In this study, a novel ERF gene, designated as ZmERF105, was firstly isolated and characterized. The Zm...

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Autores principales: Zang, Zhenyuan, Lv, Ying, Liu, Shuang, Yang, Wei, Ci, Jiabin, Ren, Xuejiao, Wang, Zhen, Wu, Hao, Ma, Wenyu, Jiang, Liangyu, Yang, Weiguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308562/
https://www.ncbi.nlm.nih.gov/pubmed/32612628
http://dx.doi.org/10.3389/fpls.2020.00850
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author Zang, Zhenyuan
Lv, Ying
Liu, Shuang
Yang, Wei
Ci, Jiabin
Ren, Xuejiao
Wang, Zhen
Wu, Hao
Ma, Wenyu
Jiang, Liangyu
Yang, Weiguang
author_facet Zang, Zhenyuan
Lv, Ying
Liu, Shuang
Yang, Wei
Ci, Jiabin
Ren, Xuejiao
Wang, Zhen
Wu, Hao
Ma, Wenyu
Jiang, Liangyu
Yang, Weiguang
author_sort Zang, Zhenyuan
collection PubMed
description The ethylene response factor (ERF) plays a crucial role in plant innate immunity. However, the molecular function of ERF in response to Exserohilum turcicum (E. turcicum) remains unknown in maize. In this study, a novel ERF gene, designated as ZmERF105, was firstly isolated and characterized. The ZmERF105 protein contains an APETALA2/ETHYLENE RESPONSIVE FACTOR (AP2/ERF) domain and a conserved LSPLSPHP motif in its C-terminal region. ZmERF105 protein was exclusively localized to the nucleus. ZmERF105 expression responded to E. turcicum treatment. Yeast one-hybrid and transcription activity assays revealed that ZmERF105 is an activator of transcription and binds to GCC-box elements. Over-expression of ZmERF105 was shown to increase maize resistance against E. turcicum, and erf105 mutant lines displayed opposite phenotype. Moreover, the activities of superoxide dismutase (SOD) and peroxidase (POD) in the ZmERF105 over-expression lines were markedly higher than in the wild-type maize lines (WT) after infection with E. turcicum, and were compromised in the erf105 mutant lines. Simultaneously, ZmERF105 over-expression lines enhanced the expression of several pathogenesis-related (PR) genes, including ZmPR1a, ZmPR2, ZmPR5, ZmPR10.1, and ZmPR10.2 after infection with E. turcicum. In contrast, the expression of PR genes was reduced in erf105 mutant lines. Our work reveals that ZmERF105 as a novel player of the ERF network and positively regulates the maize resistance response to E. turcicum.
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spelling pubmed-73085622020-06-30 A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum Zang, Zhenyuan Lv, Ying Liu, Shuang Yang, Wei Ci, Jiabin Ren, Xuejiao Wang, Zhen Wu, Hao Ma, Wenyu Jiang, Liangyu Yang, Weiguang Front Plant Sci Plant Science The ethylene response factor (ERF) plays a crucial role in plant innate immunity. However, the molecular function of ERF in response to Exserohilum turcicum (E. turcicum) remains unknown in maize. In this study, a novel ERF gene, designated as ZmERF105, was firstly isolated and characterized. The ZmERF105 protein contains an APETALA2/ETHYLENE RESPONSIVE FACTOR (AP2/ERF) domain and a conserved LSPLSPHP motif in its C-terminal region. ZmERF105 protein was exclusively localized to the nucleus. ZmERF105 expression responded to E. turcicum treatment. Yeast one-hybrid and transcription activity assays revealed that ZmERF105 is an activator of transcription and binds to GCC-box elements. Over-expression of ZmERF105 was shown to increase maize resistance against E. turcicum, and erf105 mutant lines displayed opposite phenotype. Moreover, the activities of superoxide dismutase (SOD) and peroxidase (POD) in the ZmERF105 over-expression lines were markedly higher than in the wild-type maize lines (WT) after infection with E. turcicum, and were compromised in the erf105 mutant lines. Simultaneously, ZmERF105 over-expression lines enhanced the expression of several pathogenesis-related (PR) genes, including ZmPR1a, ZmPR2, ZmPR5, ZmPR10.1, and ZmPR10.2 after infection with E. turcicum. In contrast, the expression of PR genes was reduced in erf105 mutant lines. Our work reveals that ZmERF105 as a novel player of the ERF network and positively regulates the maize resistance response to E. turcicum. Frontiers Media S.A. 2020-06-16 /pmc/articles/PMC7308562/ /pubmed/32612628 http://dx.doi.org/10.3389/fpls.2020.00850 Text en Copyright © 2020 Zang, Lv, Liu, Yang, Ci, Ren, Wang, Wu, Ma, Jiang and Yang http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Zang, Zhenyuan
Lv, Ying
Liu, Shuang
Yang, Wei
Ci, Jiabin
Ren, Xuejiao
Wang, Zhen
Wu, Hao
Ma, Wenyu
Jiang, Liangyu
Yang, Weiguang
A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title_full A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title_fullStr A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title_full_unstemmed A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title_short A Novel ERF Transcription Factor, ZmERF105, Positively Regulates Maize Resistance to Exserohilum turcicum
title_sort novel erf transcription factor, zmerf105, positively regulates maize resistance to exserohilum turcicum
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308562/
https://www.ncbi.nlm.nih.gov/pubmed/32612628
http://dx.doi.org/10.3389/fpls.2020.00850
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